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Investigation into the Design of Components of Bag Filtersuse for Cement Production

Olorunbogun Joshua Tolulope, Chukwuemeka Peter Ukpaka

Abstract


Bag Filters play important role in the economy of modern industries that it is use for not only to control air pollution but to prevent waster and recycle materials back into the process. Because of the importance of Bag houses in industries, considerable effort has been done by scientists till now on the modeling of this unit for better understanding and improved productivity. To model and design a bag house we have to know the unknown kinetic parameters of the governing equations. The basic aim of this research is to state and compile the basic design equations for various units in the bag house and to prove that MATLAB and HYSYS can be used as a tool for the estimation of kinetic parameters of governing equations for a bag house and to check for its efficiency. The research work demonstrates the usefulness of this design in monitoring, predicting and simulating the significance of bag filter in controlling particles displacement into the air.

Key words: Investigation, design, components, bag filters, use, cement, production


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Aaron, D., & Tsouris, C. (2005). Separation of CO2 from flue gas: a review, Separation Science and Technology, 40(1–3), 321–348.

AIshamsi, A. M. Alhosani, K. I. & Yousri, K. M. (2015) “Hydrophobic materials, super plasticizer and micro silica effects on setting of cement pastes at various temperatures. Journal of Concrete Research, 49(179), 111–115,

Aleem, A. E. Heikal, M., & Morsi, W. M. (2014) Hydration, characteristic, thermal expansion and microstructure of cement containing nano-silica. Construction and Building Materials, 59, 151–160.

Al-Khashman, O. A. & Shawabkeh, R. A. (2006). Metals distribution in soils around the cement factory in southern Jordan. Environmental Pollution, 140(3), 387–394.

Arcardo P. and Gregoria A. (1996). Environmental Engineering, A Design Approach. (1st Edition) India: Pearson Education services.

Bethea, R. M. (1978). Air Pollution Control Technology: An Engineering Analysis Point of View. New York: Van Nostrand Reinhold.

Branquinho, C., Oliveira, G. G., Augusto, S., Pinho, P., Máguas, C., & Correia, O. (2008). Biomonitoring spatial and temporal impact of atmospheric dust from a cement industry: Environmental Pollution, 151(2), 292–299.

Chen, C., Habert, G., Bouzidi, Y. & Jullien, A. (2010). Environmental impact of cement production: Detail of the different processes and cement plant variability evaluation. Journal of Cleaner Production, 18(5), 478–485.

Chen, J., Kou, S. C. & Poon, C. S. (2012). Hydration and properties of nano-TiO2 blended cement composites, Cement and Concrete Composites, 34(5), 642–649.

Czaja, A. U., Trukhanb, N., & Müllerb, U. (2009). Industrial applications of metal–organic frameworks. Chemical Society Reviews, 38(5), 1284, 2009.

Davis, W. T. & Kurzyske, F. R. (1979). The effect of cyclonic pre-cleaners on the pressure drop of fabric filters. Filtration & Separation. 16(5), 451-454.

De Vries, I. J. & Polder, R. B. (1997). Hydrophobic treatment of concrete. Construction and Building Materials, 11(4), 259–265.

Dennis, R. & Klemm, H. A. (1980). Modeling concepts for pulse jet filtration. Journal of the Air Pollution Control Association, 30(1), 38-43.

Duran, A., Fernandez, N., Mazon, P., & Joglar, A. (1988) Coloured coatings containing mixed transition metal oxides. Journal of Non-Crystalline Solids, 100(1–3), 494–500,

Elimbi, A., Tchakoute, H., Njopwouo, D. (2011) “Effects of calcination temperature of kaolinite clays on the properties of geopolymer cements, Journal on Construction and Building Materials, 25(6), 2805–2812.

Farmer, A. M (1993). The effects of dust on vegetation: a review, Environmental Pollution, vol. 79(1), 63–75.

Fernández, I., Chacon, E. & Irabien, A. (2001). Influence of lead, zinc, iron (III) and chromium (III) oxides on the setting time and strength development of Portland cement,” Cement and Concrete Research, 31(8), 1213–1219.

Gallaer, C. A., & Schindeler, J. W. (1963). Mechanical dust collectors. Journal of the Air Pollution Control Association, (12th Edition), 574-580.

Hindy, K. T., Shafy, H. I. A. & Faraga, S. A. (1990). The role of the cement industry in the contamination of air, water, soil and plant with vanadium in Cairo,” Environmental Pollution, 66(3), 19 5–205.

Jamesa, S. L. (2003). Metal-organic frameworks. Chemical Society Reviews, 32(5), 276,

Khan, A. I., & Bhuiyan, M. Y. (2013). Analysis of design and purchase decision of central dust collection system. Global Journal of Research In Engineering.

Kraus, M. N. (1979). Baghouses: separating and collecting industrial dusts. Chemical Engineering. 86, 94-106.

Li, J. R., Ma, Y. & McCarthy, M. C. (2011). Carbon dioxide capture-related gas adsorption and separation in metal-organic frameworks. Coordination Chemistry Reviews, 255(15-16), 1791–1823.

Makin, K. & Iinoya, K. (1982). An Estimation Method of Pressure Loss Parameters for a Multi-Compartment Fabric Filter, Department of Chemical Engineering, Kyoto University, Japan, 126-136

Mamlouk, M. & Zaniewski, J. (1999). Materials for Civil and Construction Engineers. Menlo Park, CA, USA: Addison Wesley Longman, Inc.

Matschei, T., Lothenbach, B., & Glasser, F. (2007). The role of calcium carbonate in cement hydration. Cement and Concrete Research, 37(4), 551–558.

McKenna, J. D. & Greiner, G. P., Theodore, L. & Buonicore A. J. (Eds.). (1982). Baghouses. Air Pollution Control Equipment - Selection, Design, Operation and Maintenance. Englewood Cliffs, NJ: Prentice-Hall.

McKenna, J. D. and J. H. Turner. (1989). Fabric Filter-Baghouses 1, Theory, Design, and Selection. Roanoke, VA: ETS.

Merlin, F., Lombois, H., Joly, S., Lequeux, N., Halarya, J. L. & Damme, H. V. (2002). Cement-polymer and clay-polymer nano- and meso-composites: spotting the difference, Journal of Materials Chemistry, 12(11), 3308–3315.

Millward, A. R. & Yaghi, O. M. (2005). Metal−organic frameworks with exceptionally high capacity for storage of carbon dioxide at room temperature, Journal of the American Chemical Society, 127(51), 17998-17999.

Morris, K. & Millington, C. A. (1983). Modelling fabric filters. Filtration and Separation, 478-482.

Morris, W. J. (1984). Cleaning mechanisms in pulse jet fabric filters. Filtration and Separation. 21(1), 50-54.

Murat, M. & Sorrentino, F. (1996). Effect of large additions of Cd, Pb, Cr, Zn, to cement raw meal on the composition and the properties of the clinker and the cement. Cement and Concrete Research, 26(3), 377–385.

Orme, C. J., Harrup, M. K. & Luther, T. A. (2001). Characterization of gas transport in selected rubbery amorphous polyphosphazene membranes, Journal of Membrane Science, 186(2), 249–256.

Powers, T. C. & Brownyard, T. L. (1946). Studies of the physical properties of hardened Portland cement paste. ACI Journal Proceedings, 43(9), 101–132.

Sanders, D. F., Smith, Z. P. & Guo, R. (2013). Energy-efficient polymeric gas separation membranes for a sustainable future: a review, Polymer technology, 54(18), 4729–4761.

Schneider, M., Romer, M., Tschudin, M. & Bolio, H. (2011). Sustainable cement production—present and future. Cement and Concrete Research, 41(7), 642–650.

Schuhmacher, M., Domingo, J. L. & Garreta, J. (2004). “Pollutants emitted by a cement plant: health risks for the population living in the neighborhood,” Environmental Research, vol. 95, no. 2, pp. 198–206,

Shephered, C. B., & Lapple, C. E. (1939). Flow pattern and pressure drop in cyclone dust collectors. Industrial Engineering Chemistry, 31(8), 972-984.

Sittig, M. (1977). Particulates and Fine Dust Removal Processes and Equipment. Park Ridge, NJ: Noyes Data Corporation.

Smith M.J. & Bird P. S.(1997). Ostomy Bag Filters. Global Journal on Bag Filters. United States.

Stern, A. C. (Ed.). (1977). Engineering Control of Air Pollution (3rd ed.). Vol. 4. NY: Academic Press.

Tittarelli, F. (2009). Oxygen diffusion through hydrophobic cement-based materials. Cement and Concrete Research, 39(10), 924–928.

Vatavuk, W. M. (1990). Estimating Costs of Air pollution Control. Chelsea, England.

Walton, K. S. & Snurr, R. Q. (2007). Applicability of the BET method for determining surface areas of micro-porous metal−organic frameworks. Journal of the American Chemical Society, 129(27), 8552–8556.


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